US8445969B2

High pressure deuterium treatment for semiconductor/high-K insulator interface

Summary by NHIP

Deuterium-treated CMOS structure

The integrated circuit structure includes complementary transistors with a single stress-producing layer applying tensile strain. A deuterium region sits between the channel and gate insulator of both a silicon channel transistor and a silicon germanium channel transistor.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

An integrated circuit structure comprises at least one pair of complementary transistors on a substrate. The pair of complementary transistors includes a first transistor and a second transistor. In addition, only one stress-producing layer is on the first transistor and the second transistor and applies tensile strain force on the first transistor and the second transistor. The first transistor has a first channel region, a gate insulator on the first channel region, and a deuterium region between the first channel region and the gate insulator. The second transistor has a germanium doped channel region, as well as the same gate insulator on the germanium doped channel region, and the same deuterium region between the germanium doped channel region and the gate insulator.

US8445969B2, drawing sheet 1
Sheet 1 of 5

Term

5.2 yearsleft in the term

Expires 20 December 2031, including 237 days of term adjustment.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

24 claims: 4 independent, 20 dependent

  1. 1
    Broadest claimClaim Score 59, broad(NHIP)An integrated circuit structure comprising:a substrate;at least one pair of complementary transistors on said substrate, said pair of complementary transistors comprising a first transistor and a second transistor;and only one stress-producing layer on said first transistor and said second transistor applying tensile strain force on said first transistor and said second transistor;said first transistor comprising a first channel region, a gate insulator on said first channel region, and a deuterium region between said first channel region and said gate insulator, and said second transistor comprising a germanium doped channel region, said gate insulator on said germanium doped channel region, and said deuterium region between said germanium doped channel region and said gate insulator.
  2. 7
    An integrated circuit structure comprising:a substrate;at least one pair of complementary transistors on said substrate, said pair of complementary transistors comprising a first transistor and a second transistor;and only one stress-producing layer on said first transistor and said second transistor applying tensile strain force on said first transistor and said second transistor;said first transistor comprising a first channel region, a gate insulator on said first channel region, and a deuterium region between said first channel region and said gate insulator, said first channel region comprising one of gallium arsenide and indium gallium arsenide, and said second transistor comprising a germanium doped channel region, said gate insulator on said germanium doped channel region, and said deuterium region between said germanium doped channel region and said gate insulator.
  3. 13
    A method of manufacturing an integrated circuit structure, said method comprising:forming complementary channel regions separated by isolation regions within a substrate, said complementary channel regions comprising a first channel region of a first transistor, and said channel regions further comprising a germanium doped channel region of a second transistor;simultaneously patterning gate insulators on said complementary channel regions;simultaneously patterning gate conductors on said gate insulators;heating said substrate in a pressurized vessel containing deuterium to simultaneously form deuterium regions between said complementary channel regions and said gate insulators;and simultaneously forming only one stress-producing layer on said first transistor and said second transistor, said stress-producing layer applying tensile strain force on said first transistor and said second transistor.
  4. 19
    A method of manufacturing an integrated circuit structure, said method comprising:forming complementary channel regions separated by isolation regions within a substrate, said complementary channel regions comprising a first channel region of a first transistor, said first channel region comprising one of gallium arsenide and indium gallium arsenide, and said channel regions further comprising a germanium doped channel region of a second transistor;simultaneously patterning gate insulators on said complementary channel regions;simultaneously patterning gate conductors on said gate insulators;heating said substrate in a pressurized vessel containing deuterium to simultaneously form deuterium regions between said complementary channel regions and said gate insulators;and simultaneously forming only one stress-producing layer on said first transistor and said second transistor, said stress-producing layer applying tensile strain force on said first transistor and said second transistor.